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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Effects of rhizobacterial ACC deaminase activity on Arabidopsis indicate that ethylene mediates local root responses to plant growth-promoting rhizobacteria
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Effects of rhizobacterial ACC deaminase activity on Arabidopsis indicate that ethylene mediates local root responses to plant growth-promoting rhizobacteria

机译:根际细菌ACC脱氨酶活性对拟南芥的影响表明乙烯介导了根部对植物生长的根际细菌的反应。

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摘要

1-Amino cyclopropane-1-carboxylic acid deaminase (AcdS) is an enzyme that degrades the precursor of plant hormone ethylene. AcdS activity has been identified in many soil bacteria. It has been proposed to play an important role in plant-growth promotion by rhizobacteria. It would lower ethylene level via uncharacterized signaling pathways in the host plant. To further investigate the role of AcdS and the involvement of ethylene signaling pathway in plant development responses to rhizobacteria, we used the model plant Arabidopsis thaliana. We compared the changes in root architecture and root hair length induced by four rhizobacteria (Phyllobacterium brassicacearum STM196, Pseudomonas putida UW4, Rhizobium leguminosarum bv. viciae 128C53K, Mesorhizobium loti MAFF303099) and by their respective acdS-deficient mutants. All the mutant strains induced similar changes in lateral root development as their WT counterparts. By contrast, root hairs of seedlings inoculated with the acdS mutant strains were significantly longer than those of the plants inoculated with the WT strains. Overall, our results would suggest that rhizobacterial AcdS activity affects local regulatory mechanisms in plant roots, and not lateral root development that is under systemic regulation involving shoot-root dialog.
机译:1-氨基环丙烷-1-羧酸脱氨酶(AcdS)是一种降解植物激素乙烯前体的酶。在许多土壤细菌中已鉴定出AcdS活性。已经提出在根瘤菌促进植物生长中起重要作用。它将通过宿主植物中未表征的信号传导途径降低乙烯水平。为了进一步研究AcdS的作用和乙烯信号通路在植物对根瘤菌发育反应中的参与,我们使用了模型植物拟南芥。我们比较了四种根瘤菌(Phyllobacterium bracicacearum STM196,Pseudomonas putida UW4,Lhizobium leguminosarum bv。viciae 128C53K,Mesoorhizobium loti MAFF303099)和它们各自的acdS缺陷型突变体引起的根部结构和根毛长度的变化。所有的突变菌株都引起了与野生型WT相似的侧根发育变化。相比之下,接种acdS突变株的幼苗的根毛明显长于接种WT株的植物的根毛。总体而言,我们的结果表明,根瘤菌AcdS活性影响植物根部的局部调节机制,而不影响在涉及芽根对话的系统调节下的侧根发育。

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